Claims
- 1. In a method for nucleic acid amplification, which includes a polymerase reaction of a nucleic acid template, a primer, a nucleic acid polymerase, and at least one nucleoside polyphosphate, the improvement comprising conducting said polymerase reaction in the presence of at least one terminally labeled nucleoside polyphosphate.
- 2. A method of claim 1, wherein amplification is achieved by polymerase chain reaction (PCR), rolling circle amplification (RCA), strand displacement amplification (SDA) or nucleic acid sequence based amplification (NASBA).
- 3. A method of claim 1, wherein said nucleic acid polymerase is selected from a DNA polymerase, an RNA polymerase, a reverse transcriptase, a terminal nucleotidyl transferase, a primase, a telomerase or a combination thereof.
- 4. A method of claim 3, wherein said DNA polymerase is an archaebacterial polymerase.
- 5. A method of claim 3, wherein said DNA polymerase is selected from Thermococcous barossii DNA polymerase, Thermococcous litoralis DNA polymerase, Thermococcous kodakarensis DNA polymerase, Pyrococcous furiosis DNA polymerase, Pyrococcous GB-D DNA polymerase, Phi 29 DNA polymerase or exonuclease deficient variants of these polymerases.
- 6. The method of claim 1, wherein amplification is conducted in the presence of a manganese salt.
- 7. The method of claim 1, wherein the amplification is conducted in the presence of a stabilizer that stabilizes the terminal-phosphate labeled nucleoside polyphosphate against non-enzymatic hydrolysis.
- 8. The method of claim 7, wherein said stabilizer is an organic additive, an inorganic additive, or a mixture of the two.
- 9. The method of claim 8, wherein said organic additive is an organic salt.
- 10. The method of claim 8, wherein said inorganic additive is an inorganic salt.
- 11. The method of claim 10, wherein said inorganic salt is selected from sulfates, molybdates, tungstates or a combination thereof.
- 12. The method of claim 1, wherein amplification is conducted in the presence of two or more terminal-phosphate labeled nucleoside polyphosphates with distinct labels.
- 13. The method of claim 1, wherein said terminal-phosphate labeled nucleoside polyphosphate comprises four or more phosphate groups in the polyphosphate chain.
- 14. The method of claim 1, wherein said terminal-phosphate labeled nucleoside polyphosphate is represented by the formula:
- 15. The method of claim 14, wherein said terminal-phosphate labeled nucleoside polyphosphate contains a linker between P and L.
- 16. The method of claim 14, wherein said sugar moiety is selected from the group consisting of ribosyl, 2′-deoxyribosyl, 2′-alkoxyribosyl, 2′-azidoribosyl, 2′-aminoribosyl, 2′-fluororibosyl, 2′-mercaptoriboxyl, 2′-alkylthioribosyl, carbocyclic, acyclic and other modified sugars.
- 17. The method of claim 14, wherein said base is selected from the group consisting of uracil, thymine, cytosine, guanine, 7-deazaguanine, hypoxanthine, 7-deazahypoxanthine, adenine, 7-deazaadenine, 2,6-diaminopurine and analogs thereof.
- 18. The method of claim 14, wherein said phosphorylated label is an enzyme-activatable label and is selected from the group consisting of chemiluminescent compounds, fluorogenic dyes, chromogenic dyes, mass tags, electrochemical tags and combinations thereof.
- 19. The method of claim 18, wherein said enzyme-activatable label is a fluorogenic moiety selected from the group consisting of 2-(5′-chloro-2′-phosphoryloxyphenyl)-6-chloro-4-(3H)-quinazolinone, fluorescein diphosphate, fluorescein 3′(6′)—O-alkyl-6′(3′)-phosphate, 9H-(1,3-dichloro-9,9-dimethylacridin-2-one-7-yl)phosphate, 4-methylumbelliferyl phosphate, resorufin phosphate, 4-trifluoromethylumbelliferyl phosphate, umbelliferyl phosphate, 3-cyanoumbelliferyl phosphate, 9,9-dimethylacirdin-2-one-7-yl phosphate, 6,8-difluoro-4-methylumbelliferyl phosphate, and derivatives thereof.
- 20. The method of claim 18, wherein said enzyme-activatable label is a chromogenic moiety selected from the group consisting of 5-bromo-4-chloro-3-indolyl phosphate, 3-indoxyl phosphate, p-nitrophenyl phosphate, and derivatives thereof.
- 21. The method of claim 18, wherein said chemiluminescent compound is an alkaline phosphatase-activated 1,2-dioxetane compound.
- 22. The method of claim 21, wherein said 1,2-dioxetane compound is selected from the group consisting of 2-chloro-5-(4-methoxyspiro[1,2-dioxetane-3,2′-(5-chloro-)tricyclo[3,3,1-13,7]-decan]-1-yl)-1-phenyl phosphate, chloroadamant-2′-ylidenemethoxyphenoxy phosphorylated dioxetane, 3-(2′-spiroadamantane)-4-methoxy-4-(3″-phosphoryloxy)phenyl-1,2-dioxetane and derivatives thereof.
- 23. A method of detecting the presence of a nucleic acid sequence in a sample comprising the steps of:
(a) conducting a nucleic acid amplification reaction to generate a labeled polyphosphate, said reaction including at least one terminal-phosphate labeled nucleoside polyphosphate, and a nucleic acid polymerase; and (b) detecting said labeled polyphosphate.
- 24. The method of claim 23, wherein said detecting step includes (a) treating said labeled polyphosphate with a phosphatase to produce a detectable species; and
(b) detecting said detectable species.
- 25. The method of claim 24, wherein said treating step and said conducting step are performed simultaneously.
- 26. The method of claim 25, wherein said detecting step is performed in real time as said detectable species is produced.
- 27. The method of claim 23, wherein said nucleic acid polymerase is selected from the group consisting of a DNA polymerase, an RNA polymerase, a reverse transcriptase, a telomerase, a primase or a terminal nucleotidyl transferase.
- 28. The method of claim 24, wherein said phosphatase is an alkaline phosphatase or an acid phosphatase.
- 29. The method of claim 25, wherein said alkaline phosphatase is selected from the group consisting of E. coli alkaline phosphatase, calf intestine alkaline phosphatase, Shrimp alkaline phosphatase and Rhodothermus marinus alkaline phosphatase.
- 30. The method of claim 23, further comprising the step of quantifying said nucleic acid in a sample by measuring the amount of labeled polyphosphate.
- 31. The method of claim 23, wherein the amplification is achieved by PCR, RCA, SDA, or NASBA.
- 32. The method of claim 23, wherein said conducting step is performed by PCR, and said reaction further includes allele specific primers.
- 33. The method of claim 23, wherein said terminal-phosphate labeled nucleoside polyphosphate is represented by the formula:
- 34. The method of claim 33, wherein said terminal-phosphate labeled nucleoside polyphosphate contains a linker between P and L.
- 35. A kit for amplifying or quantifying a nucleic acid target comprising:
(a) at least one terminal-phosphate labeled nucleotide; and (b) a polymerase.
- 36. The kit as in claim 35, further comprises a phosphatase.
- 37. The kit as in claim 35, further comprises a terminal-phosphate labeled nucleoside polyphosphate stabilizer.
- 38. The kit as in claim 35, further includes a manganese salt.
- 39. The kit as in claim 35, further includes a set of random-sequence primers.
- 40. The kit as in claim 39, wherein the primers are of length 4-10 nucleotides.
- 41. The kit as in claim 39, wherein the primers are hexamers.
- 42. The kit as in claim 39, wherein the primers are nuclease resistant.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. provisional application No. 60/445,274, filed Feb. 5, 2003; the disclosures of which are incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60445274 |
Feb 2003 |
US |